CHI Gap Shields

Post on 07-Jan-2016

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NSTX. Supported by. CHI Gap Shields. SPG, HK, RR. Columbia U CompX General Atomics FIU INL Johns Hopkins U LANL LLNL Lodestar MIT Nova Photonics New York U ORNL PPPL Princeton U Purdue U SNL Think Tank, Inc. UC Davis UC Irvine UCLA UCSD U Colorado U Illinois U Maryland - PowerPoint PPT Presentation

Transcript of CHI Gap Shields

CHI Gap Shields

SPG, HK, RR

NSTX Supported by

Culham Sci CtrU St. Andrews

York UChubu UFukui U

Hiroshima UHyogo UKyoto U

Kyushu UKyushu Tokai U

NIFSNiigata UU Tokyo

JAEAHebrew UIoffe Inst

RRC Kurchatov InstTRINITI

NFRIKAIST

POSTECHASIPP

ENEA, FrascatiCEA, Cadarache

IPP, JülichIPP, Garching

ASCR, Czech Rep

Columbia UCompXGeneral AtomicsFIUINLJohns Hopkins ULANLLLNLLodestarMITNova PhotonicsNew York UORNLPPPLPrinceton UPurdue USNLThink Tank, Inc.UC DavisUC IrvineUCLAUCSDU ColoradoU IllinoisU MarylandU RochesterU WashingtonU Wisconsin

NSTX NSTX-U CHI Gap Protection (SPG)

Desire to Improve the Power Handling Capability of the CHI Gap

• Issue: Plasma & heat entering the CHI gap has been known to– degrade discharge performance due to heat flux on SS, and– damage diagnostics in the CHI gap,

• Problem may be more severe in NSTX-Upgrade, where the horizontal inner target is more narrow.

• Goal: Install armor on outboard side of CHI gap.– Graphite is not considered a plausible candidate due to high temperature bake-out

requirement.

• Provides 2 benefits– For cases with OSP on OBD bull-nose tiles, armor increases tolerance to transient

inboard motion of the SP.– For cases with OSP in the inner horizontal target, armor improves power handling of

the far(ther) SOL heat flux.

• Not planning for this armor to be a primary, “steady-state” power handling component.

• Have already identified candidate concepts, and are working with engineering to implement.

NSTX NSTX-U CHI Gap Protection (SPG)

Concept for Moly. Tile

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